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Snake constriction rapidly induces circulatory arrest in rats.
Boback, Scott M; McCann, Katelyn J; Wood, Kevin A; McNeal, Patrick M; Blankenship, Emmett L; Zwemer, Charles F.
Afiliação
  • Boback SM; Dickinson College, Department of Biology, Carlisle, PA 17013, USA bobacks@dickinson.edu.
  • McCann KJ; Dickinson College, Department of Biology, Carlisle, PA 17013, USA.
  • Wood KA; Dickinson College, Department of Biology, Carlisle, PA 17013, USA.
  • McNeal PM; Dickinson College, Department of Biology, Carlisle, PA 17013, USA.
  • Blankenship EL; All Pets Emergency and Referral Clinic, Alpharetta, GA 30004, USA.
  • Zwemer CF; Dickinson College, Department of Biology, Carlisle, PA 17013, USA.
J Exp Biol ; 218(Pt 14): 2279-88, 2015 Jul.
Article em En | MEDLINE | ID: mdl-26202779
As legless predators, snakes are unique in their ability to immobilize and kill their prey through the process of constriction, and yet how this pressure incapacitates and ultimately kills the prey remains unknown. In this study, we examined the cardiovascular function of anesthetized rats before, during and after being constricted by boas (Boa constrictor) to examine the effect of constriction on the prey's circulatory function. The results demonstrate that within 6 s of being constricted, peripheral arterial blood pressure (PBP) at the femoral artery dropped to 1/2 of baseline values while central venous pressure (CVP) increased 6-fold from baseline during the same time. Electrocardiographic recordings from the anesthetized rat's heart revealed profound bradycardia as heart rate (fH) dropped to nearly half of baseline within 60 s of being constricted, and QRS duration nearly doubled over the same time period. By the end of constriction (mean 6.5±1 min), rat PBP dropped 2.9-fold, fH dropped 3.9-fold, systemic perfusion pressure (SPP=PBP-CVP) dropped 5.7-fold, and 91% of rats (10 of 11) had evidence of cardiac electrical dysfunction. Blood drawn immediately after constriction revealed that, relative to baseline, rats were hyperkalemic (serum potassium levels nearly doubled) and acidotic (blood pH dropped from 7.4 to 7.0). These results are the first to document the physiological response of prey to constriction and support the hypothesis that snake constriction induces rapid prey death due to circulatory arrest.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Comportamento Predatório / Pressão Sanguínea / Boidae / Constrição / Frequência Cardíaca Idioma: En Ano de publicação: 2015 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Comportamento Predatório / Pressão Sanguínea / Boidae / Constrição / Frequência Cardíaca Idioma: En Ano de publicação: 2015 Tipo de documento: Article